Handleless Arc-Ahaped Alumina Crucible Ceramic Boat - 42.75*11.43*11.00mm 100pcs
| Formula | Al₂O₃ | |
|---|---|---|
| Forms | ||
| Materials | ||
| Purity | 99% | |
| CAS Number | 1344-28-1 | |
| Commodity | Crucible | |
| Model | LW-CR-42.75-11.00-3 | |
Product Properties
Downloads & Resources
| Resource Type | Link |
|---|---|
| Safety Data Sheet (SDS) | 99% Alumina MSDS-Innovacera |
| Technical Data Sheet (TDS) | 05-99 Alumina Ceramic Material Properties-SU0207 |
| Catalogue | 99% Alumina Crucible(EN) |
Product Details
This perforated boat-shaped crucible is fabricated from 99% high-purity alumina (Al₂O₃) ceramic material through high-temperature sintering; it combines high thermal resistance with excellent chemical stability and mechanical strength, making it suitable for a wide range of high-temperature experiments and industrial applications.
Specification:
- Material: Corundum 99 Alumina Al2O3
- Max. Working Temperature: 1600℃
- Size (L*W*H): 42.75*11.43*11.00mm
- Wall Thickness: 1.22mm
Feature:
- Excellent heat resistance and high strength at high temperatures
- High mechanical strength
- High heat conduction and excellent thermal shock resistance
- It is stable to chemicals and molten metal, and has excellent corrosion resistance under high temperatures.
- The oxidation and reduction atmosphere is extremely stable at high temperatures
- Good electrical insulation at high temperatures
Application:
- University laboratory experiments
- Smelting of non-ferrous metals such as gold, silver, copper, etc
- High-temperature calcination in tube muffle furnaces
- Sample melting treatment
- Chemical analysis and ashing
- Crystal growth and optical material preparation
INNOVA Supplies also provides custom crucibles as client’s requirements.
For more details, pls contact info@innovasupplies.com.
Frequently Asked Questions
Due to the thermal expansion properties of the alumina material, heating or cooling too rapidly can cause thermal shock and lead to cracking. To extend the product life, it is recommended to warm up and cool down as slowly as possible, avoiding direct exposure to temperature extremes.
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